In array radar signal processing applications, the processing demands range from tens of GFLOPS to several TFLOPS. To address this, as well as the, size and power dissipation issues, a special purpose “array signal processing” architecture is proposed. We argue that a combined MIMD-SIMD system can give flexibility, scalability, and programmability as well as high computing density. The MIMD system level, where SIMD modules are interconnected by a fiber-optic real-time network, provides the high level flexibility while the SIMD module level provides the compute density. In this paper we evaluate different design alternatives and show how the VEGA architecture was derived. By examining the applications and the algorithms used, the SIMD mesh p...
The submission begins by demonstrating that the conditions required for consideration under the Univ...
This thesis investigates the use of a highly parallel SIMD machine for fast Synthetic Aperture Radar...
and to lend or sell such copies for private, scholarly or scientific research purposes only. Where t...
In array radar signal processing applications, the processing demands range from tens of GFLOPS to s...
In modern and future radar applications there are high demands on the signal processing chain in ter...
moderately parallel SIMD, architecture for high performance array signal processin
The thesis is about computer architectures specially tuned to an application area. This means that t...
The aim of this pro ject was to evaluate the use of SIMD array architectures in radar signal proces...
In this paper, we consider the mapping of two radar algorithms on a new scalable hardware architectu...
In this project, an array signal processing test-bed is constructed. This test-bed is named as the V...
This thesis examines processor architectures for Synthetic Aperture Radar (SAR). SAR is a remote sen...
In this paper, we consider the mapping of two radar algorithms on a new scalable hardware architectu...
■ This article examines the suitability of the Mesh synchronous processor (MeshSP) architecture for ...
This paper investigates the feasibility of a backend design for real-time, multiple-channel processi...
Emerging Software Defined Radio (SDR) baseband platforms are based on multiple processors with massi...
The submission begins by demonstrating that the conditions required for consideration under the Univ...
This thesis investigates the use of a highly parallel SIMD machine for fast Synthetic Aperture Radar...
and to lend or sell such copies for private, scholarly or scientific research purposes only. Where t...
In array radar signal processing applications, the processing demands range from tens of GFLOPS to s...
In modern and future radar applications there are high demands on the signal processing chain in ter...
moderately parallel SIMD, architecture for high performance array signal processin
The thesis is about computer architectures specially tuned to an application area. This means that t...
The aim of this pro ject was to evaluate the use of SIMD array architectures in radar signal proces...
In this paper, we consider the mapping of two radar algorithms on a new scalable hardware architectu...
In this project, an array signal processing test-bed is constructed. This test-bed is named as the V...
This thesis examines processor architectures for Synthetic Aperture Radar (SAR). SAR is a remote sen...
In this paper, we consider the mapping of two radar algorithms on a new scalable hardware architectu...
■ This article examines the suitability of the Mesh synchronous processor (MeshSP) architecture for ...
This paper investigates the feasibility of a backend design for real-time, multiple-channel processi...
Emerging Software Defined Radio (SDR) baseband platforms are based on multiple processors with massi...
The submission begins by demonstrating that the conditions required for consideration under the Univ...
This thesis investigates the use of a highly parallel SIMD machine for fast Synthetic Aperture Radar...
and to lend or sell such copies for private, scholarly or scientific research purposes only. Where t...